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20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres1 Switched Capacitor DC-DC converters Peter Denes, Bob Ely, Maurice Garcia-Sciveres.

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Presentation on theme: "20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres1 Switched Capacitor DC-DC converters Peter Denes, Bob Ely, Maurice Garcia-Sciveres."— Presentation transcript:

1 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres1 Switched Capacitor DC-DC converters Peter Denes, Bob Ely, Maurice Garcia-Sciveres Lawrence Berkeley National Laboratory

2 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres2 Power lines Problem of “long” distance electrical power distribution is not new The novelty is that “long” is getting shorter The relevant distance scale turns out to be the load operating voltage Wrong units? Voltage is driven by oxide thickness: units of length. => Miniaturization inside IC also affects distances outside IC! Eventually all power distribution distances become “long” Voltage conversion inside IC is being pursued in/for industry See for example http://www.bioee.ee.columbia.edu/ –This option has found little interest in our community so far. –Probably can get away without it for one more scaling generation

3 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres3 Options well known, Once accepted that we are dealing with long distance power transmission –Most ideas discussed today can be found in patents filed by Tesla well before 1900. Serial powering Switched capacitors

4 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres4 Scaling from present pixel detector with same cable plant down to PP2 30KW from rack 100KW from rack 35KW from rack  = 72%  = 56%  = 90%  = 42%  Module power  Rack power

5 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres5 Why switched capacitors? Commercial DC-DC down-converters for power applications are all inductive. –(Switched capacitors used to step-up voltage at low power to drive displays, etc.) Why then study switched capacitors for power? –Cannot use ferrites in magnetic field => performance penalty for magnetic converters –Fringe AC magnetic fields may produce pickup in detectors (must study case-by-case) –Ceramic capacitor miniaturization makes great advances year after year (air-core inductors cannot be improved). –Over-voltage safety considerations

6 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres6 Test configuration used: divide-by-4 stack Phase 1 - Charge 1 + - 1 2 2 + - 1 2 2 + - 1 2 2 + - Load Vd + - + - + - + - Load + - + - + - + - Phase 2 - Discharge 4 capacitors – 10 switches

7 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres7 Other configurations Many capacitor arrangements are possible with different advantages –Minimum number of capacitors for a given ratio (less than for stack) –Minimum voltage drop across switches (more than for stack), etc. Problem has been solved in general: Makowski, D. Maksimovic, "Performance limits of switched capacitor DC-DC converters," IEEE PESC, 1995 Record, pp. 12151221)

8 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres8 First prototype test chip 50V (s-d) 0.35  m HV CMOS process Minimum size (adequate for ~100mA) Switch transistors only- no auxiliary circuitry Learned about process simulation, radiation hardness, and bulk isolation Did not work as a useful converter due to bulk isolation problems Results presented at 12th Workshop on Electronics for LHC and Future Experiments, http://ific.uv.es/lecc06/

9 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres9 HV Transistor characteristics after irradiation The most important result is that the drain source resistance has increased by about 10% Measured Rds also exceeded model predictions even before irradiation. => Increased switch size.

10 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres10 Second prototype Same 50V 0.35  m HV CMOS process Submitted February 2007 (expected back in May) Sized for 1A output. 4.3 x 4.9 mm Contains auxiliary circuits. All capacitors external All clocks external

11 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres11 Top level schematic Clock inputs (same freq. with varying delays) 1  F pump capacitors These components could be internal eventually Load Charge to gate drivers

12 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres12 Simulation results 1 Dominated by switch resistance Charge lost in switch parasitics

13 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres13 Simulation results 2 6  r/t resistance Safe  V Fraction Volts

14 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres14 Simulation results 3 1MHz, 1  F pump caps Startup circuit

15 20 Mar 2007ACES workshop -- Switched Capacitors -- M. Garcia-Sciveres15 Conclusion Performance of demonstrator 1A chip meets scaling needs in simulation Radiation degrades performance- size switches (or current output) for desired end-of-life efficiency. Given clock frequency and load, Vout is controlled by Vin. Miniaturization not yet optimized (eg. many external components) Control circuitry and architecture will evolve after experience Plan to use this prototype to power pixel modules and strip stave prototypes.


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